To better understand the oxide ion conduction mechanism of rare earth silicate apatites as intermediate temperature electrolytes for solid oxide fuel cells (SOFC), the effect of lower valent metal doping on the performance of Nd(28+x)/3AlxSi6-xO26 (0 ≤ x ≤ 2) single crystals has been examined. The measurement of ionic conductivity via AC impedance spectroscopy showed that the conductivities were anisotropic and superior along the c direction. An interesting aspect from the impedance studies was the identification of a second semicircle with capacitance similar to that of a grain boundary component, despite the fact that polarized optical microscopy and electron backscattered diffraction showed that the single crystals consisted of a single ...
Lanthanoid silicate apatite solid electrolytes contain one-dimensional channels. These materials dis...
Rare earth silicate apatites are one-dimensional channelstructures that show potential as electrolyt...
We have prepared the highly <i>c</i>-axis-oriented polycrystalline material of apatite-type La<sub>9...
To better understand the oxide ion conduction mechanism of rare earth silicate apatites as intermedi...
To better understand the oxide ion conduction mechanism of rare earth silicate apatites as intermedi...
Lanthanoid silicates (Ln9.33Si6O26) adopt the hexagonal apatite structure and show potential as soli...
Rare earth silicate apatites are one-dimensional channel structures that show potential as electroly...
Lanthanoid silicates (Ln9.33Si6O26) adopt the hexagonal apatite structure and are under investigatio...
Lanthanoid silicate apatite solid electrolytes contain one-dimensional channels. These materials dis...
Rare earth silicate apatites are one-dimensional channel structures that show potential as electroly...
Neodymium silicate apatites are promising intermediate temperature (500°C–700°C) electrolytes for so...
et al.Rare earth silicate apatites are one-dimensional channel structures that show potential as ele...
Lanthanoid silicate apatite solid electrolytes contain one-dimensional channels. These materials dis...
Rare earth silicate apatites are one-dimensional channelstructures that show potential as electrolyt...
We have prepared the highly <i>c</i>-axis-oriented polycrystalline material of apatite-type La<sub>9...
To better understand the oxide ion conduction mechanism of rare earth silicate apatites as intermedi...
To better understand the oxide ion conduction mechanism of rare earth silicate apatites as intermedi...
Lanthanoid silicates (Ln9.33Si6O26) adopt the hexagonal apatite structure and show potential as soli...
Rare earth silicate apatites are one-dimensional channel structures that show potential as electroly...
Lanthanoid silicates (Ln9.33Si6O26) adopt the hexagonal apatite structure and are under investigatio...
Lanthanoid silicate apatite solid electrolytes contain one-dimensional channels. These materials dis...
Rare earth silicate apatites are one-dimensional channel structures that show potential as electroly...
Neodymium silicate apatites are promising intermediate temperature (500°C–700°C) electrolytes for so...
et al.Rare earth silicate apatites are one-dimensional channel structures that show potential as ele...
Lanthanoid silicate apatite solid electrolytes contain one-dimensional channels. These materials dis...
Rare earth silicate apatites are one-dimensional channelstructures that show potential as electrolyt...
We have prepared the highly <i>c</i>-axis-oriented polycrystalline material of apatite-type La<sub>9...